Radial alignment of microtubules through tubulin polymerization in an evaporating droplet

Thumbnail Image
Date
2020-04-10
Authors
Keya, Jakia Jannat
Kudoh, Hiroki
Kabir, Arif Md. Rashedul
Inoue, Daisuke
Miyamoto, Nobuyoshi
Tani, Tomomi
Kakugo, Akira
Shikinaka, Kazuhiro
Alternative Title
Date Created
Location
DOI
10.1371/journal.pone.0231352
Related Materials
Replaces
Replaced By
Keywords
Abstract
We report the formation of spherulites from droplets of highly concentrated tubulin solution via nucleation and subsequent polymerization to microtubules (MTs) under water evaporation by heating. Radial alignment of MTs in the spherulites was confirmed by the optical properties of the spherulites observed using polarized optical microscopy and fluorescence microscopy. Temperature and concentration of tubulins were found as important parameters to control the spherulite pattern formation of MTs where evaporation plays a significant role. The alignment of MTs was regulated reversibly by temperature induced polymerization and depolymerization of tubulins. The formation of the MTs patterns was also confirmed at the molecular level from the small angle X-ray measurements. This work provides a simple method for obtaining radially aligned arrays of MTs.
Description
© The Author(s), 2020. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Keya, J. J., Kudoh, H., Kabir, A. M. R., Inoue, D., Miyamoto, N., Tani, T., Kakugo, A., & Shikinaka, K. Radial alignment of microtubules through tubulin polymerization in an evaporating droplet. Plos One, 15(4), (2020): e0231352, doi:10.1371/journal.pone.0231352.
Embargo Date
Citation
Keya, J. J., Kudoh, H., Kabir, A. M. R., Inoue, D., Miyamoto, N., Tani, T., Kakugo, A., & Shikinaka, K. (2020). Radial alignment of microtubules through tubulin polymerization in an evaporating droplet. Plos One, 15(4), e0231352.
Cruises
Cruise ID
Cruise DOI
Vessel Name
Except where otherwise noted, this item's license is described as Attribution 4.0 International